BESS

ESS Project Form
ENERGY  INFRASTRUCTURE,
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The OMNI-250 is a 250 kWh all-in-one energy storage system designed for Commercial & Industrial environments where demand volatility, high load profiles, and uptime requirements directly impact operating costs. Designed for measurable performance, the system supports peak demand reduction, load shifting, and on-site resilience within a fully integrated platform.

Built with Tier 1 LiFePO4 (LFP) cells, advanced liquid thermal management, and a 125 kW liquid-cooled power conversion system (PCS), the OMNI-250 is optimized for thermal stability, repeatable output, and long service life. Its outdoor-rated enclosure and integrated architecture streamline deployment while supporting scalable energy strategies, including solar integration.

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The OMNI-5000 is a 5MWh containerized energy storage system engineered for utility-scale and large Commercial & Industrial applications where grid stability, energy cost optimization, and high-capacity storage are mission-critical. Designed for measurable performance, the system supports peak shaving, load leveling, frequency regulation, and renewable energy integration within a fully integrated, high-density platform.

Built with LiFePO4 (LFP) battery technology, advanced liquid cooling, and a fully integrated power conversion and control system, the OMNI-5000 is optimized for thermal stability, high efficiency, and long operational life. Its containerized architecture reduces installation complexity while enabling scalable deployment across grid-connected and behind-the-meter applications.

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Key Features

Robust PCS Output and Liquid Cooling

The system features a 125kW Power Conversion System (PCS) combined with liquid thermal management. This allows for sustained high-power performance and thermal stability even during heavy-duty installations or in high-ambient temperatures, ensuring the system can reliably handle large electrical loads without derating or overheating.

5.015 MWh Energy Capacity

High-density storage per 20-ft container for large-scale energy shifting, peak shaving, and grid support

Utility-Scale Power Conversion

(Up to 5000 kW PCS) – Supports high-load applications with stable output and wide voltage operating range

Advanced Liquid Cooling System

Maintains cell temperature uniformity (<2.5°C variance) to improve performance and extend battery life

Certified Safety & Compliance

Tested to UL 9540A, UL 1973, IEC 62619, IEC 63056, and NFPA 855 standards for proven safety and reliability.

OMNI-250 key features base
OMNI-5000 key features base

Peak Shaving and Demand Charge Reduction:

Purpose-built for energy-intensive facilities, the OMNI-250 can deliver its full 125kW output to reduce expensive utility demand charges. By discharging stored energy during peak periods (peak shaving) and charging during off-peak times (load shifting), enterprises can significantly lower operational costs and avoid penalties associated with high power spikes.

Advanced Safety and Mission-Critical Reliability:

For high-power industrial operations where uptime is critical, the system includes multi-layer fire suppression (including gas detection and explosion-proof venting) and is IP54-rated for rugged outdoor environments. It also supports a seamless transition to backup power (with conversion times < 20ms) to maintain continuous operations for critical loads during grid outages.

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What Is a Battery Energy Storage System (BESS)?

A battery energy storage system, also known as a “BESS”, is a type of energy storage system that uses batteries to store and deliver electrical energy, often used as a grid contingency. Effective BESS infrastructure is designed to deliver full-rated power output for several hours (depending on array) and are highly effective as storage solutions for home solar systems, especially those that are off-grid, enabling homeowners to use power during non-peak hours. They are also commonly used in commercial and industrial settings as backup grid contingencies, enabling access to electrical power even in the event of unexpected power failures.

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